DOE OSTI Β· 2513931
Dark dimension and the grand unification of forces
Abstract
The dark dimension scenario, predicting one extra mesoscopic dimension in the micron range, has emerged by applying various swampland principles to the dark energy. In this note we find that realizing the grand unification of gauge forces is highly constraining in this context. Without actually constructing any grand unified theory (GUT) models, we argue that the mere assumption of grand unification of forces in this scenario, together with the experimental bounds on massive replicas of the Standard Model gauge bosons, predicts an upper bound for the GUT scale, π GUT β² 10 16 GeV. Combined with the experimental bound on the proton lifetime, this predicts that the π gauge boson mediating proton decay is a 5D solitonic string of Planckian tension stretched across a length scale πΏ βΌ (1β10 TeV) β1 ending on gauge branes of the same diameter βΌπΏ. This leads to a mass of π π βΌ 10 15 β10 16 GeV. In particular assuming grand unification in the dark dimension scenario results in a tower of Kaluza-Klein excitations of Standard Model gauge bosons on the gauge branes in the 1β10 TeV range. This suggests that the diameter/separation πΏ of the gauge branes correlates with both the weak scale βΌ1/πΏ near a TeV and the GUT scale βΌπ$^2_5$β’πΏ at 10 16 GeV.
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Heckman, Jonathan J. [Univ. of Pennsylvania, Philadelphia, PA (United States)] (ORCID:0000000339397810), Vafa, Cumrun [Harvard Univ., Cambridge, MA (United States)], Weigand, Timo [Univ. of Hamburg (Germany)] (ORCID:0000000312224119), Xu, Fengjun [Beijing Institute of Mathematical Sciences and Applications (BIMSA) (China)] (ORCID:0000000236781596). 2025-02-10. Dark dimension and the grand unification of forces. https://doi.org/10.1103/physrevd.111.046014
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